Cryns et al. “The Cutting Edge:Caspases in Apoptosis and Disease” in When Cells Die; A comprehensive evaluation of apoptosis and programmed cell death, (eds, Lockshin et al). New York:Wiley-Liss pges 177-210, 1998.* |
P. Henkart, “Ice family protease: Mediators of all apoptotic cell death?” Immunity 4: 195-201, 1996.* |
Callard et al. the Cytokine FactsBook. San Diego: Academic Press. p. 31, 1994.* |
Fernandez-Alnemri et al. CPP32, a novel human apoptic protein with homology to Caenorhabditis elegans cell death protein ced-3 and mammalian interleukin- 1β-converting enzyme. J. Biol. Chem 269:30761-30764, Dec. 9, 1994.* |
Barinaga, “Cell Suicide: By ICE, Not Fire,” Science 26:754-756, 1994. |
Black et al., “Activation of Interleukin-1β by a Co-induced Protease,” FEBS Lett. 247:386-390, 1989. |
Cerretti et al., “Molecular Cloning of the Interluekin-1β Converting Enzyme,” Science 256:97-100, 1992. |
Duan et al., “ICE-LAP3, a Novel Mammalian Homologue of the Caenorhabditis elegans Cell Death Protein Ced-3 Is Activated during Fas- and Tumor Necrosis Factor-induced Apoptosis,” J. Biol. Chem. 271(3):1621-1625, 1996. |
Enarl et al., “Involvement of an ICE-like protease in Fas-mediated apoptosis,” Nature 375:78-81, 1995. |
Fernandes-Alnemri et al., “In vitro activation of CPP32 and Mch3 by Mch4, a novel human apoptotic cysteine protease containing two FADD-like domains,” Proceedings of the National Academy of Sciences of the United States of America 93(15):7464-7469, 1996. |
Fernandes-Alnemri et al., “Mch3, a novel human apoptotic cysteine protease highly related to CPP32,” Cancer Research 55(24):6045-6052, 1995. |
Gagliardini et al., “Prevention of Vertebrate Neuronal Death by the crmA Gene,” Science 263:826-828, 1994. |
Henkart, “Ice family protease: Mediators of all apoptotic cell death?,” Immunity 4:195-201, 1996. |
Howard et al., “IL-1-Converting Enzyme Requires Aspartic Acid Residues for Processing of the IL-1β Precursor at Two Distinct Sites and Does Not Cleave 31-kDa IL-1α,” J. Immunol. 147:2964-2969, 1991. |
Sleath et al., “Substrate Specificity of the Protease That Processes Human Interleukin-1β,” J. Biol. Chem. 265:14526-14528, 1990. |
Steller, “Mechanisms and Genes of Cellular Suicide,” Science 267:1445-1449, 1995. |
Tewari et al., “Yama/CPP3beta, a mammalian homolog of CED-3, is a CrmA-inhibitable protease that cleaves the death substrate poly {ADP-ribose} polymerase,” Cell 81:801-809, 1995. |
Thompson, “Apoptosis in the Pathogenesis and Treatment of Disease,” Science 267:1456-1462, 1995. |
Thornberry et al., “A Novel Heterodimeric Cysteine Is Required for Interleukin-1β Process in Monocytes,” Nature 356:768-774, 1992. |
Tiso et al., “Chromosomal localization of the human genes, CPP32, Mch2, Mch3, and Ich-1, involved in cellular apoptosis,” Biochemical And Biophysical Research Communications 225(3):983-989, 1996. |
Walker et al., “Crystal Structure of the Cysteine Protease Interleukin-1β-Converting Enyme: A (p20/p10)2 Homodimer,” Cell 78:343-352, 1994. |
Wang et al., “Ich-1, an Ice/ced-3-Related Gene, Encodes Both Positive and Negative Regulators of Programmed Cell Death,” Cell 78:739-750, 1994. |
Williams and Smith, “Molecular Regulation of Apoptosis: Genetic Controls on Cell Death,” Cell 74:777-779, 1993. |
Wilson et al., “Structure and Mechanism of Interleukin-1β converting Enzyme,” Nature 370:270-275, 1994. |
Yuan et al., “The C. elegans Cell Death Gene ced-3 Encodes a Protein Similar to Mammalian Interleukin-1β-Converting Enzyme,” Cell 75:641-652, 1993. |
Korsmeyer, “Regulators of cell death,” TIG 11(3):101-105, 1995. |
Kostura et al., “Identification of a Monocyte Specific Pre-interleukin 1β Convertase Activity,” Proc. Natl. Acad. Sci. USA 86:5227-5231, 1989. |
Kumar et al., “Induction of Apoptosis by the Mouse Nedd2 Gene, Which Encodes a Protein Similar to the Product of the Caenorhabditis elegans Cell Death Gene Ced-3 and the Mammalian IL-1β-converting Enzyme,” Genes Dev. 8:1613-1626, 1994. |
Lippke et al., “Identification and Characterization of CPP32-Mch2 Homolog 1, a Novel Cysteine Protease Similar to CPP32,” Journal of Biological Chemistry 271(4):1825-1828, 1996. |
Los et al., “Requirement of an ICE/CED-3 protease for Fas/APO-1-mediated apoptosis,” Nature 375:81-83, 1995. |
Miura et al., “Induction of Apoptosis in Fibroblasts by IL-1β-Converting Enzyme, a Mammalian Homolog of the C. elegans Cell Death Gene ced-3.” Cell 75:653-660. |
Nagata and Golstein, “The Fas Death Factor,” Science 267:1449-1456, 1995. |
Nicholson et al., “Identification and inhibition of the ICE/CED-3 protease necessary for mammalian apoptosis,” Nature 376:37-43, 1995. |
Pai et al., “Purification and cDNA cloning of a second apoptosis-related cysteine protease that cleaves and activates sterol regulatory element binding proteins,” Proceedings of the National Academy of Sciences of the United States of America 93(11):5437-5442, 1996. |
Ray et al., “Viral Inhibition of Inflammation: Cowpox Virus Encodes and Inhibitor of the Interleukin-1β Converting Enzyme,” Cell 69:597-604, 1992. |
Reed, “Mini-Review: Cellular Mechanisms of Disease Series; Bcl-2 and the Regulation of Programmed Cell Death,” J. Cell Biol. 124:1-6, 1994. |